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Autothermal chemical looping reforming process of different fossil liquid fuels

机译:不同化石液体燃料的自动化学循环重整过程

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摘要

The autothermal Chemical-Looping Reforming (a-CLR) is a process where syngas is produced with two main advantages; there are captured CO2 emissions and the heat required for the syngas production is generated by the process itself. A Ni-based material is used as oxygen carrier circulating between two fluidized bed reactors: the fuel and air reactors. In this work, the auto-thermal conditions in a global H2 production process, integrated by the a-CLR process and a Water Gas Shift reactor, using different liquid fossil fuels were theoretically determined. The hydrogen production per mol of carbon in the fuel was similar for all fossil fuels, taking a value of 2.2 at the optimal operating temperature (700 °C). In addition, the possibility of working at low temperature for a maximum H2 production was experimentally demonstrated in a continuous 1 kWth a-CLR unit.
机译:自热化学循环重整(A-CLR)是一种工艺,其中合成气由两个主要优点产生;捕获的二氧化碳排放量,合成气生产所需的热量由该过程本身产生。使用Ni基材料用作氧载体在两个流化床反应器之间循环:燃料和空气反应器。在这项工作中,通过A-CLR工艺和水煤气移料器集成的全局H2生产过程中的自动热条件在理论上是使用不同液体化石燃料的使用不同的液体化石燃料。燃料中每摩尔碳的氢气产生与所有化石燃料相似,在最佳工作温度(700°C)下取值为2.2。此外,在连续的1 kWth a-CLR单元中实验证明了在低温下工作的低温工作的可能性。

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